Electric device brushing tool
By designing the sliding mechanism of the electrical device brush workpiece, the automatic plug-in and unplugging of the wire harness is realized, solving the problem of damage to the camera and wiring harness connectors during the electrical device brushing process, and improving efficiency and accuracy.
Patent Information
- Application Number
- CN202421442637.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-21
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-06-21
AI Technical Summary
In the prior art, the camera and wiring harness connectors are easily damaged during the brushing of electrical devices, and the efficiency is low.
An electrical device brush workpiece is designed, including a base, a positioning part and a sliding mechanism. The sliding mechanism includes a first sliding part and a second sliding part. The second sliding part has a groove for placing the wire harness. The groove opening is arranged corresponding to the electrical device insertion interface. Automatic plug-in and unplugging of the wire harness is achieved through sliding the sliding part to avoid manual operation.
Ensure that the wiring harness connector is inserted into the plug-in interface accurately, avoid damage, improve brushing efficiency and accuracy, and protect the camera from damage.
Smart Images

Figure CN223168494U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of electronic devices, and particularly to a tooling for brushing parts of electrical components. Background Art
[0002] The software of electrical components needs to be updated. Currently, manual part brushing is usually adopted for the update, that is, the parts of the electrical components to be updated are placed on the workbench, and the wiring harness is connected to start part brushing. In this way, since some of the parts of the electrical components include cameras, during the part brushing process, the cameras are very likely to be touched, resulting in scratches or bumps on the cameras. At the same time, when manually inserting the wiring harness, it is impossible to accurately and easily insert the wiring harness, which easily causes damage to the wiring harness socket and leads to customer complaints. In addition, the working hours of part brushing are increased, and the efficiency is low. Content of the Utility Model
[0003] The purpose of the utility model is to solve the problem that the cameras and the wiring harness sockets are easily damaged during the current manual part brushing process. The utility model provides a tooling for brushing parts of electrical components, which can avoid damage to the cameras and the wiring harness sockets, and improve the efficiency of part brushing at the same time.
[0004] To solve the above technical problems, an embodiment of the utility model discloses a tooling for brushing parts of electrical components, including:
[0005] A base;
[0006] A plurality of positioning parts, the plurality of positioning parts are arranged at intervals on the front surface of the base to form an accommodating space for accommodating and fixing electrical components; and
[0007] A sliding mechanism, the sliding mechanism includes a first sliding part and a second sliding part, and the sliding mechanism is arranged at an interval from the accommodating space.
[0008] Wherein, the first sliding part is fixedly arranged on the front surface of the base.
[0009] The second sliding part is connected with the first sliding part in a slidable manner. The second sliding part includes a first groove extending towards the accommodating space. The first groove is used for placing the wiring harness. One end of the first groove facing the accommodating space has a first opening for the connector of the wiring harness to pass through, and the first opening is arranged opposite to the socket of the electrical component.
[0010] With the above technical solution, when the electrical component needs to be flashed, place the electrical component in the accommodation space for fixation, place the wire harness in the first groove, let the connector of the wire harness pass through the first opening, push the second sliding part to slide relative to the first sliding part in the direction towards the insertion interface until the connector of the wire harness is inserted into the insertion interface of the electrical component. One end of the wire harness away from the connector is connected to an external device (such as a computer), and then start the power supply to start flashing. After the flashing is completed, push the second sliding part to slide relative to the first sliding part in the direction away from the insertion interface until the connector of the wire harness is separated from the insertion interface, and then take out the wire harness from the first groove.
[0011] During the flashing process, relying on the second sliding part to slide in the directions towards and away from the insertion interface can complete the insertion and extraction of the wire harness connector. The first opening is arranged opposite to the insertion interface of the electrical component, which can ensure that the wire harness connector can be inserted directly opposite to the insertion interface. There is no need to manually insert and extract the wire harness connector, avoiding problems such as damage to the wire harness insertion interface and inclination of the pins during the flashing process, achieving fast plugging and unplugging, high efficiency, and improved accuracy. At the same time, the entire electrical component is located in the accommodation space, and the accommodation space is located on the front of the base, that is, raising the camera in the electrical component with a camera (such as a front view integrated machine), avoiding damage or injury to the lens by other foreign objects in the outside world during the flashing process, and also ensuring the stability of the positioning part.
[0012] According to another specific embodiment of the present invention, an embodiment of the present invention discloses a flashing tooling for an electrical component. The first sliding part is provided with a sliding groove extending towards the accommodation space, and the second sliding part includes an extension protruding outwards, and the extension can slide in the sliding groove.
[0013] With the above technical solution, the extension can slide in the sliding groove to achieve the purpose that the second sliding part can slide relative to the first sliding part.
[0014] According to another specific embodiment of the present invention, an embodiment of the present invention discloses a flashing tooling for an electrical component. The width of the widest position of the sliding groove is greater than the width of the notch of the sliding groove, and the shape of the extension is formed to match the sliding groove.
[0015] With the above technical solution, the width of the widest position of the sliding groove is greater than the width of the notch of the sliding groove. In this way, the extension located in the sliding groove can be limited at the notch of the sliding groove and will not move in the direction away from the notch. And the shape of the extension matches the sliding groove, and at the same time, it also ensures that the extension can fit the groove wall of the sliding groove and will not shake towards the groove wall direction in the sliding groove, making the extension stable when sliding along the sliding groove, so that the wire harness connector in the first opening can be inserted into the insertion interface stably and accurately, reducing the failure rate and damage to the wire harness insertion interface.
[0016] According to another specific embodiment of the present utility model, an embodiment of the present utility model discloses a tooling for brushing electrical components, and the extension member is disposed below the first groove.
[0017] According to another specific embodiment of the present utility model, an embodiment of the present utility model discloses a tooling for brushing electrical components. One end of the sliding groove facing the accommodating space has a second opening for the extension member to pass through.
[0018] With the above technical solution, the second sliding portion can slide towards the direction of the insertion interface. When there is a certain distance between the insertion interface of the electrical component and the second sliding portion, the second sliding portion can pass through the second opening until the wire harness connector in the first opening can be inserted into the insertion interface.
[0019] According to another specific embodiment of the present utility model, an embodiment of the present utility model discloses a tooling for brushing electrical components. The sliding mechanism further includes a fixing member connected to the second sliding portion, and a part of the fixing member is disposed above the first groove to limit the wire harness in the first groove.
[0020] With the above technical solution, the fixing member can limit the wire harness in the first groove, so that during the brushing process, the wire harness can be kept stable without swaying, enabling it to be inserted into the insertion interface stably and accurately, reducing the failure rate and damage to the wire harness insertion interface.
[0021] According to another specific embodiment of the present utility model, an embodiment of the present utility model discloses a tooling for brushing electrical components. The part of the fixing member straddles the first groove, and bending members are provided at both ends of the part. The bending members extend towards the base direction and are fixedly connected to the second sliding portion.
[0022] With the above technical solution, the setting of the bending members enables the fixing member to be fixed on the second sliding portion.
[0023] According to another specific embodiment of the present utility model, an embodiment of the present utility model discloses a tooling for brushing electrical components. Each positioning portion is erected on the front surface of the base, and a placement groove is provided at the top of each positioning portion for placing and fixing a part of the electrical component.
[0024] With the above technical solution, each positioning portion is erected. A part of the electrical component is placed in the placement groove at the top of the positioning portion. In this way, there is a height difference between the electrical component and the workbench, and the camera on the electrical component is lifted, avoiding being scratched or damaged by other foreign objects during the brushing process, and at the same time achieving quick limiting of the electrical component.
[0025] According to another specific embodiment of the present utility model, an electrical component brushing tooling of the present utility model is disclosed, and a plurality of the sliding mechanisms corresponding one-to-one to the insertion interfaces of the electrical components are provided.
[0026] According to another specific embodiment of the present utility model, an electrical component brushing tooling of the present utility model is disclosed. A plurality of second grooves are formed in the back surface of the base, and the plurality of second grooves are used to accommodate bolts for fixing the plurality of positioning portions and the first sliding portion.
[0027] Adopting the above technical solution, the bolts are accommodated in the second grooves, so that the base can be ensured to be flush and can be stably placed on a workbench or other places. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 A three-dimensional view showing the electrical component brushing tooling provided by the embodiment of the present utility model Figure 1 , in which the electrical component and the wire harness are not assembled;
[0029] Figure 2 A three-dimensional view showing the electrical component brushing tooling provided by the embodiment of the present utility model Figure 2 , in which the electrical component is assembled and the wire harness is not assembled;
[0030] Figure 3 A three-dimensional view showing the electrical component brushing tooling provided by the embodiment of the present utility model from a side view Figure 3 ;
[0031] Figure 4 A three-dimensional view showing the electrical component brushing tooling provided by the embodiment of the present utility model Figure 4 , in which the electrical component and the Ethernet wire harness are assembled;
[0032] Figure 5 A three-dimensional view showing the first sliding portion provided by the embodiment of the present utility model;
[0033] Figure 6 A three-dimensional view showing the second sliding portion provided by the embodiment of the present utility model;
[0034] Figure 7 A three-dimensional view showing the fourth sliding portion provided by the embodiment of the present utility model.
[0035] Description of the drawings: Among them, 10 is the base; 11 is the second groove; 110 is the second sub-groove; 111 is the fourth sub-groove; 112 is the bolt; 113 is the fifth sub-groove; 114 is the sixth sub-groove; 115 is the seventh sub-groove; 20 is the positioning part; 21 is the accommodating space; 22 is the placing groove; 220 is the first groove; 221 is the second groove; 30 is the sliding mechanism; 31 is the first sliding mechanism; 310 is the first sliding part; 3100 is the sliding groove; 3101 is the first vertical wall; 3102 is the arc wall; 3103 is the second vertical wall; 3104 is the second opening; 311 is the second sliding part; 3110 is the first groove; 3111 is the first opening; 3112 is the first slider; 3113 is the extension piece; 3114 is the first part; 3115 is the second part; 3116 is the protrusion; 3117 is the first baffle; 3118 is the first U-shaped groove; 312 is the first fixing piece; 3120 is the first bending piece; 32 is the second sliding mechanism; 320 is the third sliding part; 321 is the fourth sliding part; 3210 is the third groove; 3211 is the third opening; 322 is the second fixing piece; 40 is the electrical component; 41 is the camera; 50 is the Ethernet cable harness. Detailed implementation manners
[0036] The following specific embodiments illustrate the implementation manners of the present utility model. Those skilled in the art can easily understand other advantages and effects of the present utility model from the content disclosed in this specification. Although the description of the present utility model will be introduced in conjunction with preferred embodiments, this does not mean that the features of this utility model are limited to this implementation manner. On the contrary, the purpose of introducing the utility model in conjunction with the implementation manner is to cover other alternatives or modifications that may be extended based on the claims of the present utility model. In order to provide a deep understanding of the present utility model, many specific details will be included in the following description. The present utility model can also be implemented without these details. In addition, in order to avoid confusing or obscuring the key points of the present utility model, some specific details will be omitted in the description. It should be noted that, without conflict, the embodiments in the present utility model and the features in the embodiments can be combined with each other.
[0037] It should be noted that in this specification, similar reference numerals and letters indicate similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.
[0038] In the description of this embodiment, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "inner", "bottom", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the utility model product is usually placed during use. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model.
[0039] The terms "first", "second", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.
[0040] In the description of this embodiment, it should also be noted that unless otherwise clearly specified and limited, the terms "set", "connected", "connected to" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in this embodiment can be understood according to specific circumstances.
[0041] To make the purpose, technical solution and advantages of the present utility model clearer, the following will further describe the embodiments of the present utility model in detail with reference to the drawings.
[0042] Refer to Figure 1 and Figure 2 , the embodiment of the present application provides a tooling for brushing electrical components, which can be applied to electrical components with software upgrade functions, such as radar, large screen, ADC (Analog to Digital Converter), domain control, etc. The embodiment of the present application will be described by taking the application to in-vehicle electrical components as an example.
[0043] Exemplarily, refer to Figure 1 and Figure 2 , the tooling for brushing electrical components includes: a base 10, four positioning parts 20 and two sliding mechanisms 30. For the convenience of description, refer to Figure 2 , the one on the right is called the first sliding mechanism 31, and the one on the left is called the second sliding mechanism 32. The four positioning parts 20 are arranged at intervals on the front of the base 10 to form an accommodating space 21, and the accommodating space 21 is used to accommodate and fix the electrical component 40 (such as an in-vehicle electrical component). The first sliding mechanism 31 includes a first sliding part 310, a second sliding part 311 and a first fixing part 312. The second sliding mechanism 32 includes a third sliding part 320, a fourth sliding part 321 and a second fixing part 322. The first sliding mechanism 31 is arranged at an interval from the accommodating space 21, for example, along the first direction (i.e., Figure 1are spaced along the X direction (as shown), but are not limited thereto, and may also be spaced along the third direction (i.e., Figure 2 the Z direction as shown), and are specifically determined according to the positions of the insertion interfaces of the electrical component 40.
[0044] Similarly, the second sliding mechanism 32 is spaced from the accommodation space 21, for example, along the first direction (i.e., Figure 1 the X direction as shown), but is not limited thereto, and may also be spaced along the third direction (i.e., Figure 2 the Z direction as shown), and are specifically determined according to the positions of the insertion interfaces of the electrical component 40.
[0045] For convenience of description, the insertion interfaces of the electrical component 40 in the embodiments of the present application are Figure 2 illustrated as shown, that is, two insertion interfaces are provided, namely a power line harness insertion interface and an Ethernet line harness insertion interface, and both the power line harness insertion interface and the Ethernet line harness insertion interface are provided on the same surface of the electrical component 40 and are spaced along the third direction (i.e., Figure 2 the Z direction as shown).
[0046] That is to say, in the embodiments of the present application, the first sliding mechanism 31 and the accommodation space 21 are spaced along the first direction (i.e., Figure 1 the X direction as shown), and the second sliding mechanism 32 and the accommodation space 21 are spaced along the first direction (i.e., Figure 1 the X direction as shown) as an example for elaboration.
[0047] Exemplarily, referring to Figure 1 and Figure 2 and in combination with Figure 6 , the first sliding part 310 is fixedly provided on the front surface of the base 10; the second sliding part 311 is connected to the first sliding part 310 in a slidable manner along the first direction, and the second sliding part 311 includes a first groove 3110 extending towards the accommodation space 21 (i.e., extending along the Figure 2 a direction as shown), and the first groove 3110 is used for placing a power line harness (not shown in the figure), but is not limited thereto, and the specific type of the wire harness is selected according to the type of the product. Along the first direction, one end of the first groove 3110 facing the accommodation space 21 has a first opening 3111, and the first opening 3111 is used for the connector of the power line harness to pass through, and the first opening 3111 and the insertion interface of the electrical component are oppositely arranged along the first direction (i.e., Figure 1 the X direction as shown).
[0048] Exemplarily, referring to Figure 1 and Figure 2 and in combination with Figure 4 and Figure 7, the third sliding part 320 is fixedly arranged on the front surface of the base 10; the fourth sliding part 321 is connected to the third sliding part 320 in a slidable manner along the first direction. The fourth sliding part 321 includes a third groove 3210 extending towards the accommodation space 21 (i.e., extending along the Figure 2 a direction shown), and the third groove 3210 is used for placing the Ethernet cable harness 50, but not limited thereto. The specific type of the cable harness is selected according to the product category. Along the first direction, one end of the third groove 3210 facing the accommodation space 21 has a third opening 3211, and the third opening 3211 is used for the connector of the Ethernet cable harness to pass through. The third opening 3211 and the insertion interface of the electrical component are arranged opposite to each other along the first direction (i.e., the Figure 1 X direction shown).
[0049] Refer to Figures 1 to 7 , when the electrical component 40 needs to be flashed, place the electrical component 40 in the accommodation space 21 and fix it. Place the power cable harness in the first groove 3110, and push the second sliding part 311 to slide along the first direction relative to the first sliding part 310 towards the direction of the power cable harness insertion interface (i.e., along the Figure 2 a direction shown). The connector of the power cable harness passes through the first opening 3111 until the connector of the power cable harness is inserted into the power cable harness insertion interface of the electrical component 40. The other end of the power cable harness away from the connector is connected to an external device (such as a computer).
[0050] Then place the Ethernet cable harness 50 in the third groove 3210. The connector of the Ethernet cable harness passes through the third opening 3211, and push the fourth sliding part 321 to slide along the first direction relative to the third sliding part 320 towards the direction of the Ethernet cable harness insertion interface (i.e., along the Figure 2 a direction shown) until the Ethernet cable harness is inserted into the Ethernet cable harness insertion interface of the electrical component 40. The other end of the Ethernet cable harness away from the connector is connected to an external device (such as a computer). Then turn on the power to start flashing.
[0051] When the flashing is completed, push the second sliding part 311 to slide along the first direction relative to the first sliding part 310 towards the direction away from the power cable harness insertion interface (i.e., along the Figure 2 b direction shown) until the connector of the power cable harness is separated from the power cable harness insertion interface, and then take out the power cable harness from the first groove 3110; then push the fourth sliding part 321 to slide along the first direction relative to the third sliding part 320 towards the direction away from the Ethernet cable harness insertion interface (i.e., along the Figure 2 b direction shown) until the connector of the Ethernet cable harness is separated from the Ethernet cable harness insertion interface, and then take out the Ethernet cable harness 50 from the third groove 3210.
[0052] During the brushing process, the insertion and extraction of the power cable bundle and the Ethernet cable bundle 50 can be completed by relying on the second sliding part 311 and the fourth sliding part 321 to slide along the first direction. The first opening 3111 and the power cable bundle insertion interface of the electrical component are arranged opposite to each other along the first direction, which can ensure that the connector of the power cable bundle is inserted into the power cable bundle insertion interface facing it along the first direction. The third opening 3211 and the Ethernet cable bundle insertion interface of the electrical component are arranged opposite to each other along the first direction, which can ensure that the connector of the Ethernet cable bundle is inserted into the Ethernet cable bundle insertion interface facing it along the first direction. There is no need to manually insert and extract the power cable bundle and the Ethernet cable bundle 50, with high efficiency and improved accuracy.
[0053] At the same time, the entire electrical component 40 is located in the accommodation space 21, and the accommodation space 21 is located on the base 10, that is, the camera 41 of the electrical component 40 is raised to avoid being scratched or damaged by other foreign objects during the brushing process.
[0054] When brushing other electrical components 40, the positioning part 20 can be placed at intervals according to the models and sizes of different electrical components 40, so that the accommodation space 21 is adapted to the models and sizes of the electrical components 40. At the same time, the height of the first groove 3110 can also be set according to the height of the power cable bundle insertion interface of the electrical component 40, so that the first opening 3111 and the power cable bundle insertion interface are arranged opposite to each other along the first direction. The height of the third groove 3210 can also be set according to the height of the Ethernet cable bundle insertion interface of the electrical component 40, so that the third opening 3211 and the Ethernet cable bundle insertion interface are arranged opposite to each other along the first direction, so as to achieve the effect of adapting to different electrical components 40.
[0055] It should be noted that the number of the sliding mechanisms 30 in the embodiments of the present application is not limited, and the number of the sliding mechanisms 30 is selected according to the number of the insertion interfaces of the electrical component 40, and can also be one, three, four, etc.
[0056] Exemplarily, refer to Figures 1 to 3 , the base 10 is in a quadrilateral shape, but is not limited thereto, and can also be in a triangular shape, a circular shape, a pentagonal shape, etc. The base 10 is provided with two second grooves 11, namely a second sub-groove 110 and a fourth sub-groove 111. Along the second direction (i.e., Figure 1 the Y direction shown), the four positioning parts 20, the first sliding part 310, the second sliding part 311, the third sliding part 320 and the fourth sliding part 321 are located on one side of the base 10 (i.e., the front of the base 10), and they are bolted to the base 10, but are not limited thereto, and can also be connected by other connection methods such as clamping and welding. The two second grooves 11 are located on the opposite sides of the base 10 (i.e., the back of the base 10), and each second groove 11 is used to accommodate the bolt 112.
[0057] Exemplarily, the second sub-groove 110 is oval, along the third direction (i.e.,Figure 3 extends in the Z direction (as shown), the fourth sub-groove 111 is similar to a π shape, and includes a fifth sub-groove 113 parallel to the second sub-groove 110, a sixth sub-groove 114 communicating with the fifth sub-groove 113, and a seventh sub-groove 115 communicating with the fifth sub-groove 113. Both the sixth sub-groove 114 and the seventh sub-groove 115 extend in the first direction (i.e., Figure 3 the X direction as shown). And they are parallel to each other.
[0058] However, in the embodiments of the present application, the shapes of the second sub-groove 110 and the fourth sub-groove 111 are not limited, and can be circular, quadrilateral, pentagonal, triangular or other irregular shapes. The number of the second grooves 11 in the embodiments of the present application is also not limited, and can be one, three, four, etc.
[0059] Wherein, the first direction (i.e., Figure 1 the X direction as shown), the second direction (i.e., Figure 1 the Y direction as shown), and the third direction (i.e., Figure 1 the Z direction as shown) are perpendicular to each other, but not limited thereto, as long as the first direction, the second direction and the third direction intersect respectively.
[0060] Exemplarily, referring to Figure 1 and Figure 2 and combining with Figure 5 , the first sliding part 310 is a cuboid, but not limited thereto. Along the second direction (i.e., Figure 1 the Y direction as shown), a sliding groove 3100 extending towards the accommodation space 21 (i.e., extending along the Figure 2 a direction as shown) is provided on the upper surface of the first sliding part 310.
[0061] Exemplarily, the width at the widest position of the sliding groove 3100 is greater than the width of the notch of the sliding groove 3100, and the shape of the subsequent extension part 3113 is formed to match the sliding groove 3100.
[0062] Specifically, the sliding groove 3100 shown in the embodiments of the present application includes a first vertical wall 3101, an arc wall 3102 and a second vertical wall 3103 connected in sequence. The first vertical wall 3101 and the second vertical wall 3103 are spaced apart in the third direction (i.e., Figure 1 the Z direction as shown). Along the first direction, the projection of the arc wall 3102 is a major arc. Along the first direction, one end of the sliding groove 3100 facing the accommodation space 21 has a second opening 3104, and the second opening 3104 is used for the subsequent extension part 3113 to pass through.
[0063] Exemplarily, referring to Figure 1 and combining with Figure 6, the second sliding part 311 includes a first slider 3112 and an extension 3113. The first slider 3112 protrudes outward to form the extension 3113. Specifically, the first slider 3112 protrudes outward along the second direction. The first slider 3112 and the extension 3113 are integrally formed. Along the second direction (i.e., Figure 1 the Y direction shown), a first groove 3110 is formed on the upper surface of the first slider 3112. One side of the first slider 3112 close to the accommodation space 21 (i.e., facing the accommodation space 21) has a first opening 3111, and one side of the first slider 3112 away from the accommodation space 21 has a first baffle 3117. Along the second direction, the extension 3113 is arranged below the first groove 3110. The extension 3113 is connected to the first slider 3112, and the extension 3113 is connected to the sliding groove 3100 in a slidable manner along the first direction.
[0064] Exemplarily, the first baffle 3117 is provided with a first U-shaped groove 3118, but it is not limited thereto. It can also be a quadrilateral groove, a pentagon groove, a triangle groove, etc. A protrusion 3116 is provided in the first groove 3110. Along the second direction (i.e., Figure 6 the Y direction shown) and in the direction away from the first sliding part 310, the height of the protrusion 3116 is lower than the height of the bottom wall of the first U-shaped groove 3118. The protrusion 3116 is connected to the first baffle 3117. Along the third direction (i.e., Figure 6 the Z direction shown), the protrusion 3116 is spaced from both ends of the first slider 3112 to form a first groove 3110 that matches the shape of the power cable harness with both ends of the first slider 3112 and the first baffle 3117.
[0065] Exemplarily, referring to Figure 5 and Figure 6 and combining with Figure 1 , the extension 3113 includes a first part 3114 and a second part 3115. The first part 3114 is attached to the arc wall 3102, and the second part 3115 is attached to the first vertical wall 3101 and the second vertical wall 3103. Along the second direction (i.e., Figure 1 the Y direction shown), the second part 3115 is arranged below the first groove 3110 and is connected to the first slider 3112.
[0066] The projection of the arc wall 3102 is a major arc, that is, an arc greater than a semi-circle, and is connected to the first vertical wall 3101 and the second vertical wall 3103. That is to say, the distance between the connection points of the arc wall 3102 and the first vertical wall 3101 and the second vertical wall 3103 is equal to the distance between the first vertical wall 3101 and the second vertical wall 3103 (i.e., Figure 5 shown in c), and for the arc wall 3102 along the third direction (i.e., Figure 5The minimum distance between any two points in the same plane in the Z direction (as shown), that is, the distance between any two points. For example Figure 5 The distance from A to B in Figure 5 As shown by d) is greater than the distance between the connection points of the arc wall 3102 and the first vertical wall 3101 and the second vertical wall 3103.
[0067] Designed in this way, the first part 3114 is attached to the arc wall 3102, which can limit the movement of the first part 3114 in the third direction (i.e., Figure 6 The Z direction as shown), and the second part 3115 is attached to the first vertical wall 3101 and the second vertical wall 3103, which can limit the movement of the second part 3115 in the third direction (i.e., Figure 6 The Z direction as shown), and the first part 3114 can be limited to the arc wall 3102, restricting the movement of the first part 3114 in the second direction (i.e., Figure 6 The Y direction as shown), so that when the extension piece 3113 slides in the first direction, it can remain stable. Thus, the connector of the power cable bundle in the first opening 3111 can be inserted into the power cable bundle insertion interface stably and accurately, reducing the failure rate and damage to the power cable bundle insertion interface.
[0068] Exemplarily, referring to Figure 2 , the first fixing member 312 is connected to the second sliding portion 311. A part of the first fixing member 312 is disposed above the first groove 3110, so that the power cable bundle is restricted within the first groove 3110, ensuring that the power cable bundle can remain stable and not sway during the brushing process, enabling it to be inserted into the power cable bundle insertion interface stably and accurately, reducing the failure rate and damage to the power cable bundle insertion interface.
[0069] Exemplarily, a part of the first fixing member 312 straddles the first groove 3110, that is, a part of the first fixing member 312 extends in the third direction, and first bending members 3120 are provided at both ends of a part. The first bending members 3120 extend in the direction of the base 10, that is, the first bending members 3120 extend downward in the second direction (i.e., Figure 2 The Y direction as shown), and are bolted to both ends of the first groove 3110 in the third direction (i.e., Figure 2 The Z direction as shown), but not limited thereto, and other connection methods such as clamping and welding can also be used.
[0070] Exemplarily, referring to Figure 2 and Figure 4, the first fixing member 312 is in an inverted U shape. Along the first direction, the first fixing member 312 is located at the front side of the first groove 3110, that is, connected to the front side of the first slider 3112, but not limited thereto. The first fixing member 312 can also be provided at the middle position or the rear side of the first groove 3110, as long as it can restrict the power cable harness within the first groove 3110.
[0071] It should be noted that the embodiment of the present application does not limit the shape of the first fixing member 312, as long as it can restrict the power cable harness within the first groove 3110. For example, it can also be in a linear shape or a T shape. Similarly, the embodiment of the present application does not limit the shape of the second fixing member 322, as long as it can restrict the Ethernet cable harness 50 within the third groove 3210. For example, it can also be in a linear shape or a T shape.
[0072] Except for the specific positions of the first fixing member 312 and the second fixing member 322 being different and there being no protrusion 3116 in the third groove 3210, the second sliding mechanism 32 and the first sliding mechanism 31 have the same other structures. Along the first direction, the second fixing member 322 is located at the rear side of the third groove 3210, but not limited thereto. The second fixing member 322 can also be provided at the middle position or the front side of the third groove 3210, as long as it can restrict the Ethernet cable harness 50 within the third groove 3210.
[0073] Exemplarily, referring to Figure 1 and Figure 2 , each positioning portion 20 extends along the second direction (i.e., the Y direction shown in Figure 1 ). Along the second direction, a placement groove 22 is provided at the top end of each positioning portion 20. The placement groove 22 is used to place and fix a part of the electrical component 40. In this way, there is a height difference between the electrical component 40 and the workbench, and the camera 41 on the electrical component 40 is lifted to avoid being scratched or damaged by other foreign objects during the brushing process.
[0074] Exemplarily, the placement groove 22 includes a first groove 220 and a second groove 221. The first groove 220 is communicated with the second groove 221. The second groove 221 is used to place a part of the electrical component 40. The first groove 220 and the second groove 221 are connected to form a limiting portion. The limiting portion and the second groove 221 are jointly used to restrict the movement of a part of the electrical component 40 along the second direction.
[0075] Although the present utility model has been illustrated and described by referring to some preferred embodiments thereof, those of ordinary skill in the art should understand that the above content is a further detailed description of the present utility model in conjunction with specific embodiments, and it cannot be determined that the specific implementation of the present utility model is only limited to these descriptions. Those skilled in the art can make various changes in form and details, including making several simple deductions or substitutions, without departing from the spirit and scope of the present utility model.
Claims
1. An electrical component brush tooling, characterized in that, Comprising: A base; A plurality of positioning portions, the plurality of positioning portions being spaced apart on the front surface of the base to form a receiving space for receiving and fixing electrical components; And A sliding mechanism, the sliding mechanism comprising a first sliding portion and a second sliding portion, the sliding mechanism being spaced apart from the receiving space, Wherein, the first sliding portion is fixedly provided on the front surface of the base, The second sliding portion is connected to the first sliding portion in a slidable manner, the second sliding portion includes a first groove extending towards the receiving space, the first groove is used for placing a wire harness, one end of the first groove facing the receiving space has a first opening for the connector of the wire harness to pass through, and the first opening is disposed opposite to the insertion interface of the electrical component.
2. The electrical component brush tooling according to claim 1, wherein The first sliding portion is provided with a sliding groove extending towards the receiving space, the second sliding portion includes an extension member protruding outwardly, and the extension member can slide in the sliding groove.
3. The electrical component brush tooling according to claim 2, characterized in that, The width of the widest position of the sliding groove is greater than the width of the notch of the sliding groove, and the shape of the extension member is formed to match the sliding groove.
4. The electrical component brush tooling according to claim 3, characterized in that, The extension member is disposed below the first groove.
5. The electrical component brush tooling according to claim 2, characterized in that, One end of the sliding groove facing the receiving space has a second opening for the extension member to pass through.
6. The electrical component brush tooling according to any one of claims 1 to 5, characterized in that The sliding mechanism further includes a fixing member, the fixing member is connected to the second sliding portion, and a part of the fixing member is disposed above the first groove to restrict the wire harness in the first groove.
7. The electrical component brush tooling according to claim 6, wherein A part of the fixing member straddles the first groove, and bending members are provided at both ends of the part, and the bending members extend towards the base direction and are fixedly connected to the second sliding portion.
8. The electrical component brush tooling according to claim 1, characterized in that, Each of the positioning portions is erected on the front surface of the base, and a placement groove is provided at the top of each of the positioning portions for placing and fixing a part of the electrical component.
9. The electrical component brush tooling according to claim 1, characterized in that, A plurality of the sliding mechanisms corresponding one-to-one to the insertion interfaces of the electrical components are provided.
10. The electrical component brush tooling according to claim 1, characterized in that, A plurality of second grooves are formed on the back surface of the base for receiving bolts for fixing the plurality of positioning portions and the first sliding portion.